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vpu

Gene
vpu
Protein
Protein Vpu
Organism
Sheep pulmonary adenomatosis virus
Length
166 amino acids
Mass
19.356 kDa
Sequence
MQPENPMIYITKIVILYACNLKFPVKLHGKLLNLALLVLNSLFSLNMVSTLEVYALITSGKQMLLTFLNLGVLNMFMFLLTLFPIFSWLPFTLENQHVTVFNICCFAFLLQESHKPLKQIMDLVILAVLFNVFVFLSKFIIKQEFLIIHRDKVLWNEPINELNINY

Gene
vpu
Protein
Protein Vpu
Organism
Simian immunodeficiency virus (isolate CPZ GAB1)
Length
88 amino acids
Function
Enhances virion budding, by targeting human CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its receptor human CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to interfere with the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo (By similarity).
Mass
10.565 kDa
Sequence
MTLLVGLVLILVGLIAWNICIWGYIIKWGYRRYKRHRLETEIERLNLILRERAEDSGNESNGEEEERLEQLIHNYNHNNHFANPMFDL

Gene
vpu
Protein
Protein Vpu
Organism
Simian immunodeficiency virus (isolate MB66)
Length
86 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.985 kDa
Sequence
MDIVQQVGLLVVLIIELVIVIVIWVKVYKLCKEDRRQKKIDRLIARIRERAEDSGNESDGDTEELQDLITEGDNLMHIGIRDNRNN

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype C (isolate 92BR025)
Length
86 amino acids
Function
Enhances virion budding, by targeting human CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.911 kDa
Sequence
MLELIGRIDYRLGVGALIVALIIVIIVWTIAYIEYRKLVRQRRIDWLVKRIKERAEDSGNESGGDTEELETMVDMGHLRLLDGNDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype C (isolate ETH2220)
Length
86 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.994 kDa
Sequence
MVDLLAKVDYRIVIVAFIVALIIAIVVWTIAYIEYRKLLRQRRIDRLIKRTRERAEDSGNESDGDTEELSTMVDMGNLRLLDVNDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group O (isolate ANT70)
Length
85 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
10.326 kDa
Sequence
MHHRDLLAIIIISALLFINVILWGFILRKYLEQKEQDRKEREILERLRRIREIRDDSDYESNGEEEQEVMDLVLSHGFDNPMFEP

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group O (isolate MVP5180)
Length
85 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
10.309 kDa
Sequence
MHQENLLALIALSALCLINVLIWLFNLRIYLVQRKQDRREQEILERLRRIKEIRDDSDYESNEEEQQEVMELIHSHGFANPMFEL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group N (isolate YBF30)
Length
83 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.532 kDa
Sequence
MLSLGFIALGAAVSIAVIVWALLYREYKKIKLQEKIKHIRQRIREREEDSGNESDGDAEWLDGDEEWLVTLLSSSKLDQGNWV

Gene
vpu
Protein
Protein Vpu
Organism
Simian immunodeficiency virus (isolate TAN1)
Length
83 amino acids
Function
Enhances virion budding, by targeting human CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its receptor human CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to interfere with the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo (By similarity).
Mass
9.58 kDa
Sequence
MIKIVVGSVSTNVIGILCILLILIGGGLLIGIGIRRELERERQHQRVLERLARRLSIDSGVEEDEEFNWNNFDPHNYNPRDWI

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate BRVA)
Length
82 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.239 kDa
Sequence
MQPLQISAIVALVVAAIIAIVVWSIALLEYRKLLRQRKIDRLIDRIRERAEDSGNESEGDQEELSALVEMGGHDAPWDIDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype F1 (isolate VI850)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.062 kDa
Sequence
MSYLLAIGIAALIVALIIAIVVWTIVYIEYKKLVRQRKINKLYKRIRERAEDSGNESEGDAEELAALGEMGPFIPGDINNL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate YU-2)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.211 kDa
Sequence
LQSLQVLAIVALVVATIIAIVVWTIVFIEYRKILRQRKIDRLINRITERAEDSGNESDGDQEELSALVERGHLAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype D (isolate Z2/CDC-Z34)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.327 kDa
Sequence
MQPSQIIAIAALVVAAIIAIVVWTIVFIEYRRIKRQRKIDCIIDRIRERAEDSGNESEGDREELSKLVEMGHHAPWDIDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype U (isolate Z3)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.463 kDa
Sequence
MSILQIVAIVAIIVALILAIVVWTIVYIEYKRLLRQRKIDWLIDRIRERAEDSGNESEGDTEELSTLVEMEPDNFRNDNDM

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype F1 (isolate 93BR020)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
8.941 kDa
Sequence
MSNLLAIGIAALIVALIITIVVWTIAYIEYKKLVRQRKINRLYKRISERAEDSGNESEGDAEELAALGEVGPFIPGDINNL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate ARV2/SF2)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.373 kDa
Sequence
MQSLQILAIVSLVVVAIIAIVVWTIVLIEYRKILRQRKIDRLFDRIREKAEDSGNESERDQEELSALVEMGHLAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate BH10)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.174 kDa
Sequence
MQPIQIAIVALVVAIIIAIVVWSIVIIEYRKILRQRKIDRLIDRLIERAEDSGNESEGEISALVEMGVEMGHHAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate BH8)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.113 kDa
Sequence
QPIPIVTIVALAVAIIIAIVVWSIVIIEYRKILRQRKIDRLIDRLIERAEDSGNESEGEISALVEMGVEMGHHAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate BRU/LAI)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.16 kDa
Sequence
MQPIQIAIAALVVAIIIAIVVWSIVIIEYRKILRQRKIDRLIDRLIERAEDSGNESEGEISALVEMGVEMGHHAPWDIDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate CDC-451)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.411 kDa
Sequence
MQSLEIVAIVELVVAAIIAIVVWTIVFIEYRKILRQRKIDRLIDRIREREEDNGNESEGDQEELSALVEMGHHAPWNVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype D (isolate ELI)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.268 kDa
Sequence
MQPLGIIAIAALVVAIILAIVVWTIVFIEYRRIKKQRRIDCLLDRITERAEDSGNESEGDREKLSKLVEMGHHAPWDIDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate HXB2)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.111 kDa
Sequence
QPIPIVAIVALVVAIIIAIVVWSIVIIEYRKILRQRKIDRLIDRLIERAEDSGNESEGEISALVEMGVEMGHHAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate HXB3)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.174 kDa
Sequence
MQPIQIAIVALVVAIIIAIVVWSIVIIEYRKILRQRKIDRLIDRLIERAEDSGNESEGEISALVEMGVEMGHHAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate JRCSF)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.23 kDa
Sequence
MQPLQILAIVALVVAGIIAIIVWSIVLIEYRKILRQRKIDRLIDKIRERAEDSGNESEGDQEELSALVERGHLAPWDINDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate LW123)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.146 kDa
Sequence
MQPIQIAIVALVVAIIIAIVVWSIVIIEYRKILRQRKIDRLIDRLIERAEDSGNESEGEISALAEMGVEMGHHAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate MN)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.041 kDa
Sequence
MQPLVIAAIVALVVAGIIAIVVWSIVFIEYRKIRRQRKIDKLIDRISERAEDSGNESEGDQEELSALVGMGHDAPWVINDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype D (isolate NDK)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.382 kDa
Sequence
MQPLVIIAIAALVVAIIIAIVVWTIVYIEYRRIKRQRKIDCLIDRIRERAEDSGNESEGEREELSKLVEMGHHAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate RF/HAT3)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.089 kDa
Sequence
MQSLEILAIVALVVAAILAIVVWTIVGIEIRKTLRQKKIDRLIDRIRERAEDSGNESDGDEEELSALVEMGHHAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate SF162)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.254 kDa
Sequence
MQPLQILAIVALVVAAIIAIVVWTIVYIEYRKILRQRKIDRLIDRITERAEDSGNESEGDQEELSALVERGHLAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate SC)
Length
81 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.116 kDa
Sequence
MQPLQILSIVALVVAAIIAIVVWSIVFILIRKILRQRKIDRLIDRIRERAEDSGNESEGIRKELSALVEMGHDAPGDIDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype H (isolate 90CF056)
Length
80 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.028 kDa
Sequence
MYILGLGIGALVVTFIIAVIVWTIVYIEYKKLVRQKKIDRLIERIGERAEDSGNESDGDTEELSKLMEMGHLNLGYVADL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (strain 89.6)
Length
80 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.197 kDa
Sequence
MLSLQILAIVALVVAAIIAIVVWSIVFIEYRKILRQRKIDRLIDRIREREEDSGNESEGDQEELAALERGHLAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate JH32)
Length
80 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.117 kDa
Sequence
MQSLIAAIVALVVVAIIAIVVWSIVFIEYRKILRQRKIDRLIDRIRERAEDSGNESEGDQEELSALVEMGHDAPWDIDDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype A (isolate MAL)
Length
80 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.205 kDa
Sequence
QPLVILAIVALVVTLIIAIVVWTIVFIEIRKIRRQRKIDRLIDRIRERAEDSGNESEGDTEELSKLVEMGHDAPWDVDDL

Gene
vpu
Protein
Protein Vpu
Organism
Simian immunodeficiency virus (isolate EK505)
Length
79 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
9.136 kDa
Sequence
MLLLIKLGFIGLAIETLIVIVVWAIVYRIYREVKVEEKISQLRQRIRDRAEDSGNESDGDAEELANLLPPDRIDQDNWV

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group N (isolate YBF106)
Length
74 amino acids
Function
Enhances virion budding by targeting host CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its host receptor CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to promote the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo.
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
8.682 kDa
Sequence
MLWLGFIALGVAIIIAAIIWVLLYKEYKKIKLQEKIEQIRQKIRDRTEDRGKESDGDAEWLAILLSPDKLDNWV

Gene
vpu
Protein
Protein Vpu
Organism
Caprine arthritis encephalitis virus
Length
73 amino acids
Mass
8.326 kDa
Sequence
MDGLETTSKIKKKGWTVRHGEKGTENRLGPILVNHLCCYKKSKFTMTKQNVTASACCYRKASHYDKAKCNRKC

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype A (isolate Z321)
Length
58 amino acids
Function
Enhances virion budding, by targeting human CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its receptor human CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to interfere with the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo (By similarity).
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
6.789 kDa
Fragment
single
Sequence
TIVFIEYRKIRKEKKIEYLIDRIRERAEDSGNESEGDTGELAKLVEMGDFDPWVGDNL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate NY5)
Length
45 amino acids
Function
Enhances virion budding, by targeting human CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its receptor human CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to interfere with the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo (By similarity).
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
5.167 kDa
Fragment
single
Sequence
RKVDRIIDRIRERAEDSGNESEGDQEELSALVEMGHDAPWDVNDL

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype D (isolate Z84)
Length
37 amino acids
Function
Enhances virion budding, by targeting human CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its receptor human CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to interfere with the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo (By similarity).
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
4.131 kDa
Fragment
single
Sequence
NQSERAEDSGNESDGDKDELSTLVEMGHHAPWDIDDM

Gene
vpu
Protein
Protein Vpu
Organism
Human immunodeficiency virus type 1 group M subtype B (isolate WMJ22)
Length
34 amino acids
Function
Enhances virion budding, by targeting human CD4 and Tetherin/BST2 to proteasome degradation. Degradation of CD4 prevents any unwanted premature interactions between viral Env and its receptor human CD4 in the endoplasmic reticulum. Degradation of antiretroviral protein Tetherin/BST2 is important for virion budding, as BST2 tethers new viral particles to the host cell membrane. Mechanistically, Vpu bridges either CD4 or BST2 to BTRC, a substrate recognition subunit of the Skp1/Cullin/F-box protein E3 ubiquitin ligase, induces their ubiquitination and subsequent proteasomal degradation. The alteration of the E3 ligase specificity by Vpu seems to interfere with the degradation of host IKBKB, leading to NF-kappa-B down-regulation and subsequent apoptosis. Ion channel activity has also been suggested, however, formation of cation-selective channel has been reconstituted ex-vivo in lipid bilayers. It is thus unsure that this activity plays a role in vivo (By similarity).
Similarity
Belongs to the HIV-1 VPU protein family.
Mass
3.757 kDa
Fragment
single
Sequence
ERAEDSGNESEGDHEELSALVDMGHDALWDVDDL